Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Data from Multivalent DR5 Peptides Activate the TRAIL Death Pathway and Exert Tumoricidal Activity

View through CrossRef
<div>Abstract<p>Ongoing clinical trials are exploring anticancer approaches based on signaling by TRAIL, a ligand for the cell death receptors DR4 and DR5. In this study, we report on the selective apoptotic effects of multivalent DR5 binding peptides (TRAIL<sup>mim/DR5</sup>) on cancer cells <i>in vitro</i> and <i>in vivo</i>. Surface plasmon resonance revealed up to several thousand-fold increased affinities of TRAIL<sup>mim/DR5</sup>-receptor complexes on generation of divalent and trivalent molecules, the latter of which was achieved with a conformationally restricted adamantane core. Notably, only multivalent molecules triggered a substantial DR5-dependent apoptotic response <i>in vitro</i>. In tumor models derived from human embryonic kidney cells or primary foreskin fibroblasts, TRAIL<sup>mim/DR5</sup> peptides exerted a cancer cell–selective action that could synergize with resveratrol in a manner independent of p53. In a xenograft model of human colon cancer, a divalent TRAIL<sup>mim/DR5</sup> peptide inhibited tumor growth. Our results offer a proof-of-principle for the development of synthetic small molecules to trigger the TRAIL apoptosis pathway for cancer therapy. Cancer Res; 70(3); 1101–10</p></div>
Title: Data from Multivalent DR5 Peptides Activate the TRAIL Death Pathway and Exert Tumoricidal Activity
Description:
<div>Abstract<p>Ongoing clinical trials are exploring anticancer approaches based on signaling by TRAIL, a ligand for the cell death receptors DR4 and DR5.
In this study, we report on the selective apoptotic effects of multivalent DR5 binding peptides (TRAIL<sup>mim/DR5</sup>) on cancer cells <i>in vitro</i> and <i>in vivo</i>.
Surface plasmon resonance revealed up to several thousand-fold increased affinities of TRAIL<sup>mim/DR5</sup>-receptor complexes on generation of divalent and trivalent molecules, the latter of which was achieved with a conformationally restricted adamantane core.
Notably, only multivalent molecules triggered a substantial DR5-dependent apoptotic response <i>in vitro</i>.
In tumor models derived from human embryonic kidney cells or primary foreskin fibroblasts, TRAIL<sup>mim/DR5</sup> peptides exerted a cancer cell–selective action that could synergize with resveratrol in a manner independent of p53.
In a xenograft model of human colon cancer, a divalent TRAIL<sup>mim/DR5</sup> peptide inhibited tumor growth.
Our results offer a proof-of-principle for the development of synthetic small molecules to trigger the TRAIL apoptosis pathway for cancer therapy.
Cancer Res; 70(3); 1101–10</p></div>.

Related Results

Data from Multivalent DR5 Peptides Activate the TRAIL Death Pathway and Exert Tumoricidal Activity
Data from Multivalent DR5 Peptides Activate the TRAIL Death Pathway and Exert Tumoricidal Activity
<div>Abstract<p>Ongoing clinical trials are exploring anticancer approaches based on signaling by TRAIL, a ligand for the cell death receptors DR4 and DR5. In this stud...
Abstract 4395: Strategy to overcome inherent TRAIL-based therapeutic limitations
Abstract 4395: Strategy to overcome inherent TRAIL-based therapeutic limitations
Abstract TNF-related apoptosis-inducing ligand (TRAIL) is a promising anti-cancer agent because of its selective ability to induce apoptosis in activated immune cell...
Études structurales de ligands peptidomimétiques de TRAIL complexés au récepteur de mort DR5
Études structurales de ligands peptidomimétiques de TRAIL complexés au récepteur de mort DR5
L'apoptose joue un rôle de protection contre la formation de cellules tumorales. Ce phénomène peut être régulé par la voie extrinsèque qui consiste en partie en l'activation du réc...
Kinome profiling of non-canonical TRAIL signaling reveals RIP1-Src-STAT3 dependent invasion in resistant non-small cell lung cancer cells
Kinome profiling of non-canonical TRAIL signaling reveals RIP1-Src-STAT3 dependent invasion in resistant non-small cell lung cancer cells
Tumor necrosis factor (TNF)-related apoptosis-inducing ligand (TRAIL) triggers apoptosis selectively in tumor cells through interaction with TRAIL-R1/DR4 or TRAIL-R2/DR5 and is con...
Proteasome Inhibitor MG132 Induces Death Receptor 5 through CCAAT/Enhancer-Binding Protein Homologous Protein
Proteasome Inhibitor MG132 Induces Death Receptor 5 through CCAAT/Enhancer-Binding Protein Homologous Protein
Abstract Combined treatment with a proteasome inhibitor and tumor necrosis factor–related apoptosis-inducing ligand (TRAIL) is a promising strategy for cancer therap...
Role of Tumor Necrosis Factor-Related Apoptosis-Inducing Ligand in Immune Response to Influenza Virus Infection in Mice
Role of Tumor Necrosis Factor-Related Apoptosis-Inducing Ligand in Immune Response to Influenza Virus Infection in Mice
ABSTRACTTumor necrosis factor-related apoptosis-inducing ligand (TRAIL) induces apoptosis of various tumor cells but not normal cells. However, various cytokines and virus infectio...
Abstract 1294: Sensitization of malignant melanomas to TRAIL-induced apoptosis by quercetin
Abstract 1294: Sensitization of malignant melanomas to TRAIL-induced apoptosis by quercetin
Abstract Skin cancer is among the most commonly-diagnosed cancers with malignant melanoma being associated with the highest rate of metastasis and mortality. In its ...

Back to Top